A new approach to quantify visceral fat via bioelectrical impedance analysis and ultrasound compared to MRI

Author:

Hoffmann JanaORCID,Thiele Jens,Kwast Stefan,Borger Michael Andrew,Schröter Thomas,Schmidt Jochen,Busse Martin

Abstract

Abstract Background Visceral adipose tissue (VAT) has been linked to systemic proinflammatory characteristics, and measuring it accurately usually requires sophisticated instruments. This study aimed to estimate VAT applying a simpler method that uses total subcutaneous fat and total body fat (BF) measurements. Method As part of our experimental approach, the subcutaneous fat mass (SFT) was measured via US (SFTtotal), and VAT was quantified by assessing MRI data. Both parameters were added to obtain total body fat (BFcalc). Those results were then compared to values obtained from a bioelectrical impedance analysis (BFBIA). Multiple regression analyses were employed to develop a simplified sex-specific equation for SFT, which was subsequently used in conjunction with BFBIA to determine VAT (VATEq). Result We observed excellent reliability between BFBIA and BFcalc, with no significant difference in body fat values (20.98 ± 8.36 kg vs. 21.08 ± 8.81 kg, p = 0.798, ICC 0.948). VATEq_female/male revealed excellent reliability when compared to VATMRI, and no significant difference appeared (women: 0.03 ± 0.66 kg with a 95% CI ranging from −1.26 kg to 1.32 kg, p = 0.815, ICC: 0.955.; men: −0.01 ± 0.85 kg with a 95% CI ranging from −1.69 kg to 1.66 kg, p = 0.925, ICC: 0.952). Conclusion Taking an experimental approach, VAT can be determined without MRI.

Publisher

Springer Science and Business Media LLC

Subject

Nutrition and Dietetics,Endocrinology, Diabetes and Metabolism,Medicine (miscellaneous)

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